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Transverse mode-coupling instability in the presence of detuning impedance

In non-axisymmetric beam pipes, a detuning impedance is present in addition to the usual driving impedance. The impact of this additional impedance contribution on the Transverse Mode-Coupling Instability (TMCI) has been re-examined in detail, comparing four different approaches: the two-particle mo...

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Detalles Bibliográficos
Autores principales: Metral, Elias, Buffat, Xavier, Rumolo, Giovanni
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:http://cds.cern.ch/record/2714848
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author Metral, Elias
Buffat, Xavier
Rumolo, Giovanni
author_facet Metral, Elias
Buffat, Xavier
Rumolo, Giovanni
author_sort Metral, Elias
collection CERN
description In non-axisymmetric beam pipes, a detuning impedance is present in addition to the usual driving impedance. The impact of this additional impedance contribution on the Transverse Mode-Coupling Instability (TMCI) has been re-examined in detail, comparing four different approaches: the two-particle model solved analytically; the circulant-matrix formalism with two (or many) azimuthal modes but only one radial mode solved semi-analytically; the circulant-matrix formalism with many azimuthal and radial modes solved numerically and HEADTAIL macroparticle tracking simulations. The results of the several benchmarks performed are discussed and the possible next steps are outlined.
id cern-2714848
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27148482020-04-09T11:03:47Zhttp://cds.cern.ch/record/2714848engMetral, EliasBuffat, XavierRumolo, GiovanniTransverse mode-coupling instability in the presence of detuning impedanceAccelerators and Storage RingsIn non-axisymmetric beam pipes, a detuning impedance is present in addition to the usual driving impedance. The impact of this additional impedance contribution on the Transverse Mode-Coupling Instability (TMCI) has been re-examined in detail, comparing four different approaches: the two-particle model solved analytically; the circulant-matrix formalism with two (or many) azimuthal modes but only one radial mode solved semi-analytically; the circulant-matrix formalism with many azimuthal and radial modes solved numerically and HEADTAIL macroparticle tracking simulations. The results of the several benchmarks performed are discussed and the possible next steps are outlined.CERN-ACC-NOTE-2020-0019oai:cds.cern.ch:27148482020-04-06
spellingShingle Accelerators and Storage Rings
Metral, Elias
Buffat, Xavier
Rumolo, Giovanni
Transverse mode-coupling instability in the presence of detuning impedance
title Transverse mode-coupling instability in the presence of detuning impedance
title_full Transverse mode-coupling instability in the presence of detuning impedance
title_fullStr Transverse mode-coupling instability in the presence of detuning impedance
title_full_unstemmed Transverse mode-coupling instability in the presence of detuning impedance
title_short Transverse mode-coupling instability in the presence of detuning impedance
title_sort transverse mode-coupling instability in the presence of detuning impedance
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2714848
work_keys_str_mv AT metralelias transversemodecouplinginstabilityinthepresenceofdetuningimpedance
AT buffatxavier transversemodecouplinginstabilityinthepresenceofdetuningimpedance
AT rumologiovanni transversemodecouplinginstabilityinthepresenceofdetuningimpedance